An impressive author team brings the wealth of advances in conservation genetics into the new edition, including two new chapters on population genomics and genetic issues in introduced and invasive species. Continuing its student focused presentation, user-friendly style and first-class illustration programme, this introductory text forms a robust teaching package.
An impressive author team brings the wealth of advances in conservation genetics into the new edition, including two new chapters on population genomics and genetic issues in introduced and invasive species. Continuing its student focused presentation, user-friendly style and first-class illustration programme, this introductory text forms a robust teaching package.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Emeritus Professor Dick Frankham holds honorary appointments at Macquarie University, James Cook University and the Australian Museum and was Hrdy Visiting Professor at Harvard University in 2004. He began his career in quantitative genetics, achieving international recognition for his work on Drosophila before turning to conservation genetics in the early 1990s. He has made many significant contributions to the field via modelling problems in Drosophila, meta-analyses and computer simulations. He is a major figure in the discipline and was awarded a D.Sc. by Macquarie University in 2006 for his scientific contributions to conservation and evolutionary genetics.
Inhaltsangabe
1. Introduction; 2. Genetics and extinction; Part I. Evolutionary Genetics of Natural Populations: 3. Genetic diversity; 4. Characterizing genetic diversity: single loci; 5. Characterizing genetic diversity: quantitative variation; 6. Evolutionary impacts of natural selection in large populations; 7. Evolution impacts of mutation, migration and their interactions with selection in large populations; 8. Genetic consequences of small population sizes; 9. Maintenance of genetic diversity; 10. Population genomics; Part II. Effects of Population Size Reduction: 11. Loss of genetic diversity in small populations; 12. Inbreeding; 13. Inbreeding depression; 14. Population fragmentation; 15. Genetically viable populations; Part III. From Theory to Practice: 16. Resolving taxonomic uncertainties and defining; 17. Genetic management of wild populations; 18. Genetic issues in introduced and invasive species; 19. Genetic management of captive populations; 20. Genetic management for reintroduction; 21. Use of molecular genetics in forensics and to understand species biology; 22. The broader context: Population Viability Analysis (PVA).
1. Introduction; 2. Genetics and extinction; Part I. Evolutionary Genetics of Natural Populations: 3. Genetic diversity; 4. Characterizing genetic diversity: single loci; 5. Characterizing genetic diversity: quantitative variation; 6. Evolutionary impacts of natural selection in large populations; 7. Evolution impacts of mutation, migration and their interactions with selection in large populations; 8. Genetic consequences of small population sizes; 9. Maintenance of genetic diversity; 10. Population genomics; Part II. Effects of Population Size Reduction: 11. Loss of genetic diversity in small populations; 12. Inbreeding; 13. Inbreeding depression; 14. Population fragmentation; 15. Genetically viable populations; Part III. From Theory to Practice: 16. Resolving taxonomic uncertainties and defining; 17. Genetic management of wild populations; 18. Genetic issues in introduced and invasive species; 19. Genetic management of captive populations; 20. Genetic management for reintroduction; 21. Use of molecular genetics in forensics and to understand species biology; 22. The broader context: Population Viability Analysis (PVA).
Rezensionen
'... an excellent introduction to population and quantitative genetics ... Introduction to Conservation Genetics is an important book; it has authoritative reviews and lucid descriptions of population and quantitative genetics. It is beautifully put together and illustrated ... I anticipate that this book and its successors will be the standard text and reference for years to come.' Charles E. Taylor, Conservation Biology
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